所在单位:能源科学与工程学院
学历:博士研究生毕业
办公地点:中南大学 能源科学与工程学院 113
联系方式:xuxiang@csu.edu.cn
学位:工学博士学位
在职信息:在职
毕业院校:中南大学
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[1]Tuning graphitic domains in porous carbon for enhanced competitive adsorption of benzene over acetone: the critical role of graphitization in separation selectivity.Separation and Purification Technology, 2025, 380
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[2]Sulfhydryl-Mediated Thermal Stabilization of Nitrogen Adsorption Sites in Aromatic Heterocyclic Waste-Derived Activated Carbon for Enhanced CO2 Capture.Advanced Functional Materials, 2025
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[3]The effect of the activating agent on the textural and chemical properties of ultra-microporous carbon materials on CO2 adsorption.Materials Letters, 2025, 403
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[4]Ru-containing high-entropy alloys catalysts for optimal oxygen evolution via multimetallic electronic synergy engineering.Applied Surface Science, 2025, 715
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[5]The optimization of hierarchical porous carbon in temperature swing adsorption for benzene: Experimental and theoretical perspective.Chemical Engineering Journal, 2025
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[6]Three-Dimensional Bioprinted Scaffolds Loaded with Multifunctional Magnesium-Based Metal–Organic Frameworks Improve the Senescence Microenvironment Prompting Aged Bone Defect Repair.ACS Nano, 2025, 19
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[7]Mechanistic insights into alkali metal migration and slagging behavior in K-type biomass ash during thermal conversion.Energy, 2025, 329
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[8]Solvent-free one-step simple synthesis of N, O-doped microporous carbon using K2CO3 as an activation agent and their application to CO2 capture: Synergistic effect of pore structure and nitrogen–oxygen functional groups.Chemical Engineering Science, 2025, 311
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[9]The construction of ultrahigh efficiency benzene molecular transport channel and application on pressure swing adsorption.Applied Surface Science, 2025, 688
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[10]Mechanistic effects of surface functional groups on porous carbons for hydrogen purification: Multi-scale simulation perspective of competitive adsorption behavior.Chemical Engineering Journal, 2025, 504
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[11]Nanoflower-like δ-MnO2 exhibits excellent ozone decomposition under harsh conditions: The influence of potassium ion.Applied Surface Science, 2024, 671
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[12]Mechanistic effects of graphitization and oxygen functional groups on benzene competitive adsorption of porous carbon under high humidity conditions.Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2024, 703
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[13]Insights into non-crystalline structure of solid solution Ce-Mn co-oxide nanofibers for efficient low-temperature toluene oxidation.Environmental Science and Pollution Research, 2024, 30 (44) : 99830 - 99841.
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[14]Designing activated carbon and porous carbon nanofibers for insight into their differences in adsorption affinity mechanisms of VOCs.Applied Surface Science, 2024, 659
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[15]Multifactor orthogonal analysis on the desorption performances of P/N/S-doped activated carbon for acetone.Journal of Environmental Chemical Engineering, 2024, 12 (3)
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[16]Carbon dioxide adsorption capacity of porous carbon after polyamine impregnation under different pore structures and temperatures.Chemical Engineering Journal, 2024, 485
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[17]Invisible active sites of Ni-Co alloy to toluene pyrolysis and hydrogen production at ultra-low temperature.International Journal of Hydrogen Energy, 2023, 48 (2) : 616 - 628.
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[18]Capture-bonding Super Assembly of Nanoscale Dispersed Bimetal on Uniform CeO2 Nanorod for the Toluene Oxidation.Chemistry - An Asian Journal, 2023, 18 (1)
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[19]Nitrogen-Doped Porous Carbon from Biomass with Efficient Toluene Adsorption and Superior Catalytic Performance.Materials, 2022, 15 (22)
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[20]Size-Controllable Synthesis of ZIF-8 and Derived Nitrogen-Rich Porous Carbon for CO2 and VOCs Adsorption.ChemistrySelect, 2022, 7 (36)